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Tensile properties of 6061-T6 friction stir welds and constitutive modelling in transverse and longitudinal orientations

机译:6061-T6摩擦搅拌焊接的拉伸性能和横向和纵向方向构建

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Tensile stress-strain properties of Al alloy 6061-T6 (AA6061-T6) and its butt welds produced by the friction stir welding (FSW) process were characterized in two different loading orientations. AA6061-T6 FS welds were made under three sets of welding conditions. Micro-hardness tests were performed to investigate microstructural evolution during the FSW process. Flat tensile specimens were machined normal and parallel to the weld line. Transvers and longitudinal tensile tests were run on the base material (AA6061-T6) and its FS welds in an Instron testing machine. The strength and ductility (or fracture strain) of the FS welds observed in the transverse orientation were substantially less than those in the longitudinal orientation. Constitutive modelling of uniaxial tensile stress-strain behaviour in both orientations was presented using a rate-independent Ludwik equation. In addition, microstructures of the base material and its FS welds were examined with optical and transmission electron microscopy to discuss the decrease in the flow stress level and the increase in the strain hardening rate of the FS welds.
机译:Al合金6061-T6(AA6061-T6)的拉伸应力 - 应变性能及其由摩擦搅拌焊接(FSW)工艺产生的对接焊缝的特征在于两种不同的负载取向。 AA6061-T6 FS焊缝是在三组焊接条件下进行的。进行微硬度试验以研究FSW过程中的微观结构演化。扁平拉伸试样普通并平行于焊接线。在Instron试验机中,在基材(AA6061-T6)上运行横向和纵向拉伸试验。在横向取向中观察到的FS焊缝的强度和延展性(或断裂应变)基本上小于纵向取向的强度和延展性。使用速率独立的Ludwik方程提出了两种取向中的单轴拉伸应力 - 应变行为的本构模拟。另外,用光学和透射电子显微镜检查基材及其FS焊缝的微观结构,讨论FS焊缝的流量应力水平的降低和升高的应变硬化率的增加。

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